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首页> 外文期刊>Molecular Microbiology >PilT mutations lead to simultaneous defects in competence for natural transformation and twitching motility in piliated Neisseria gonorrhoeae.
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PilT mutations lead to simultaneous defects in competence for natural transformation and twitching motility in piliated Neisseria gonorrhoeae.

机译:PilT突变导致毛状淋病奈瑟菌自然转化能力和抽搐运动能力同时出现缺陷。

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摘要

Neisseria gonorrhoeae, the Gram-negative aetiological agent of gonorrhoeae, is one of many mucosal pathogens of man that expresses competence for natural transformation. Expression of this phenotype by gonococci appears to rely on the expression of type IV pili (Tfp), but the mechanistic basis for this relationship remains unknown. During studies of gonococcal pilus biogenesis, a homologue of the PilT family of proteins, required for Tfp-dependent twitching motility in Pseudomonas aeruginosa and social gliding motility in Myxococcus xanthus, was discovered. Like the findings in these other species, we show here that gonococcal PilT mutants constructed in vitro no longer display twitching motility. In addition, we demonstrate that they have concurrently lost the ability to undergo natural transformation, despite the expression of structurally and morphologically normal Tpf. These results were confirmed by the findings that two classes of spontaneous mutants that failed to express twitching motility and transformability carried mutations in PilT. Piliated PilT mutants and a panel of pilus assembly mutants were found to be deficient in sequence-specific DNA uptake into the cell, the earliest demonstrable step in neisserial competence. The PilT-deficient strains represent the first genetically defined mutants that are defective in DNA uptake but retain Tfp expression.
机译:淋病奈瑟菌是淋病的革兰氏阴性病原体,它是人类表达天然转化能力的许多粘膜病原体之一。淋球菌表达这种表型似乎依赖于IV型菌毛(Tfp)的表达,但是这种关系的机制基础仍然未知。在研究淋球菌菌毛的生物发生过程中,发现了铜绿假单胞菌的Tfp依赖性抽搐运动和黄色粘球菌的社交滑行运动所需的PilT蛋白家族的同源物。像在其他物种中的发现一样,我们在这里显示体外构建的淋球菌PilT突变体不再显示抽搐运动性。此外,我们证明了尽管结构和形态正常的Tpf表达,它们同时丧失了进行自然转化的能力。这些发现得到了以下结果的证实:两类未能表达抽搐运动性和可转化性的自发突变体在PilT中携带突变。发现Pilated PilT突变体和一组菌毛装配突变体缺乏序列特异性DNA进入细胞的能力,这是奈瑟菌能力中最早可证明的步骤。缺乏PilT的菌株代表了第一个基因定义的突变体,其在DNA摄取方面存在缺陷,但保留了Tfp表达。

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